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Geometrical form assessment of a CFD based breathing thermal manikins, designed by simplified polygonal shapes

机译:通过简化的多边形形状设计的基于CFD的呼吸暖体假人的几何形状评估

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The presented paper focuses on a CFD based analyses of the complexity in the geometrical shape of the breathing thermal manikins, associated with their main functionalities. Both impacts of the external manikin’s form were studied – over the velocity and over the temperature fields in the thermal plume zone above the head. Three different geometrical shapes are analysed – a physiologically identified (called Humanoid Manikin) and two other shapes, designed to match the overall 95th percentile of the anthropometric size of the standard person (called Polygonal Manikins). The first model represents a comprehensive multifaceted figure of a manikin with high degree of physiological identity with a female human being. The second and third one, are simplified, but still with anatomically realistic component forms, accurately representing the anthropometric size of a standard person. The difference between them is in the presence of additional flow optimization collars in the third model. The numerical results demonstrate the clear impact of the manikins’ geometrical characteristics over the simulated breathing and convective flows. The optimization with the proposed collars had a positive effect over the resulted flow acceleration at top head and chest zones. However, the improvement of the flow characteristics was observed for two of the simulated three breathing phases and further shape optimization is required.
机译:提出的论文集中在基于CFD的呼吸热人体模型的几何形状复杂性及其主要功能的分析。研究了外部人体模型形态的两种影响-超过了头部上方热羽区域中的速度和温度场。分析了三种不同的几何形状–一种生理上可识别的形状(称为“人形人体模型”)和两个其他形状,旨在匹配标准人的人体测量尺寸的第95个百分位数(称为“多边形人体模型”)。第一个模型代表人体模型与女性人类具有高度生理同一性的综合多面体。第二个和第三个简化了,但仍然具有解剖学上逼真的组件形式,可以准确地表示标准人的人体测量尺寸。它们之间的区别在于在第三种模型中存在附加的流量优化套环。数值结果表明人体模型的几何特征对模拟的呼吸和对流流动具有明显的影响。提出的项圈的优化对顶部和胸部顶部的流动加速产生了积极影响。然而,对于模拟的三个呼吸阶段中的两个,观察到流动特性的改善,并且需要进一步的形状优化。

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